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Vestas Product Offer Cataldo Pignatale Product Support Manager Vestas Italia S.r.l. Desire-Net Project.

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Presentation on theme: "Vestas Product Offer Cataldo Pignatale Product Support Manager Vestas Italia S.r.l. Desire-Net Project."— Presentation transcript:

1 Vestas Product Offer Cataldo Pignatale Product Support Manager Vestas Italia S.r.l. Desire-Net Project

2 2 If you have the site…

3 3 Session Contents Aim: at the end of this session participants will have an overview of the wind turbine portfolio in Vestas and the way the modern technologies have been applied to them Duration: 35-40min

4 4 Proven Performance Power output Operational availability Power quality Sound level

5 5 Development of Vestas turbines

6 6 Wind turbine range Agenda kW 2.0 MW 1.5 MW 3.0 MW

7 7 kW class V kW in Norway V kW

8 8 V kW The turbine that goes anywhere Allround turbine Ideal for populated as well as remote areas Easy to transport Well-proven technology Advanced pitch technology Outstanding track record Broad range of tower heights Optimised for medium and high winds V kW in Ireland

9 9 V kW Technical specifications Nominal output: 850 kW Rotor diameter: 52 m Area swept: 2,124 m 2 Nominal revolutions: 26 rpm ( ) Power regulation: Pitch/OptiSpeed ® Air brake: full blade pitch Generator: asynchronous with OptiSpeed ® Nominal wind speed: 16 m/s Tower (hub heights), app.: 36.5 m, 40 m, 44 m, 49 m, 55 m, 60 m, 65 m, 70 m, 74 m, 86 m Control: Microprocessor-based OptiSpeed ® output regulation OptiTip ® pitch regulation

10 10 Hub Blade bearing Blade Main bearing Hydraulic power unit Main shaft Gearbox High speed shaft Yaw gear Generator Slip rings G. Cooling air outlet Anemometer Oil & water coolers Pitch cilinder V kW Nacelle layout

11 11 V kW Power curves

12 MW class V MW in Germany V MW

13 13 V82 Creating more from less Well-proven technology Excellent grid compatibility Low sound power level Optimised for low to medium winds V MW in Portugal

14 14 V MW Technical specifications Nominal output: 1.65 MW Rotor diameter: 82 m Area swept: 5,281 m 2 Nominal revolutions: 14.4 rpm, 14.4/10.8 rpm Power regulation: Active-Stall ® Air brake: full blade pitch Generator: asynchronous 2 speed generator Cut-in wind speed: 3.5 m/s, 2.5 m/s Nominal wind speed: 13 m/s Tower (hub heights), app.: 59 m, 68.5 m, 70 m, 78 m, 80 m Control: Computer control system Output regulation and optimisation via Active-Stall ®

15 15 Yaw system Gearbox Brake Coupling Generator Cooler Main shaft Anemo- meter and wind vanes Main bearing Hub with spinner V MW Nacelle layout

16 16 V MW Power curves

17 MW class V MW in Germany V MWV MWV MWV MW

18 MW class Nacelle layout Hub Blade bearing Blade Main bearing Hydraulic power unit Main shaft Gearbox High speed shaft Yaw gear Generator Slip rings Anemometer Oil & water coolers Pitch cilinder Trafo

19 19 V80 Versatile megawattage V MW in Wyoming, USA Cornerstone of the 2 MW class Mainstream turbine Optimised for medium and high winds Pitch regulation Many different tower heights V MW and V MW

20 20 V MW Technical specifications Nominal output: 1.8 MW Rotor diameter: 80 m Area swept: 5,027 m 2 Nominal revolutions: 15.5/16.8 rpm Power regulation: Pitch/OptiSlip ® Air brake: 3 separate pitch settings Generator: asynchronous with OptiSlip ® Cut-in wind speed: 4 m/s Nominal wind speed: 16 m/s Tower (hub heights), app.: 60 m, 67 m, 78 m Control: Microprocessor-based OptiSlip ® output regulation OptiTip ® pitch regulation

21 21 V MW Power curves

22 22 V MW Technical specifications Nominal output: 2.0 MW Rotor diameter: 80 m Area swept: 5,027 m 2 Nominal revolutions: 16.7 rpm Power regulation: Pitch/OptiSpeed ® Air brake: 3 separate pitch cylinders Generator: asynchronous with OptiSpeed ® Cut-in wind speed: 4 m/s Nominal wind speed: 15 m/s Tower (hub heights), app.: 60 m, 67 m, 78 m, 100 m Control: Microprocessor-based OptiSpeed ® output regulation and optimisation OptiTip ® pitch regulation

23 23 V MW Power curves

24 24 V90 High output in low to medium winds V80 proven technology Blade innovations of V90 in 3 MW class Optimised for low to medium winds V MW and V MW V MW in Denmark

25 25 V MW Technical specifications Nominal output: 1.8 MW Rotor diameter: 90 m Area swept: 6,362 m 2 Nominal revolutions: 13.3 rpm Power regulation: Pitch/OptiSpeed ® Air brake: 3 separate pitch cylinders Generator: asynchronous with OptiSpeed ® Cut-in wind speed: 3.5 m/s Nominal wind speed: 12 m/s Tower (hub height), app.: 80 m Control: Microprocessor-based OptiSpeed ® output regulation and optimisation OptiTip ® pitch regulation

26 26 V MW Technical specifications Nominal output: 2.0 MW Rotor diameter: 90 m Area swept: 6,362 m 2 Nominal revolutions: 13.3 rpm Power regulation: Pitch/OptiSpeed ® Air brake: 3 separate pitch cylinders Generator: asynchronous with OptiSpeed ® Cut-in wind speed: 3.5 m/s Nominal wind speed: 13 m/s Tower (hub height), app.: 80 m, 105 m Control: Microprocessor-based OptiSpeed ® output regulation and optimisation OptiTip ® pitch regulation

27 27 V MW and V MW Power curves

28 MW class V MW in Germany V MW

29 29 V MW The efficient way to more power Cornerstone of the 3 MW class Low weight Low transportation costs Lighter and stronger tower New nacelle design generates more power Blade innovations Optimised for high winds and offshore installation V MW in Portugal

30 30 V MW Technical specifications Nominal output: 3.0 MW Rotor diameter: 90 m Area swept: 6,362 m 2 Nominal revolutions: 16.1 rpm Power regulation: Pitch/OptiSpeed ® Air brake: 3 separate pitch cylinders Generator: asynchronous with OptiSpeed ® Cut-in wind speed: 4 m/s Nominal wind speed: 15 m/s Tower (hub height), app.: 80 m, 105 m Control: Microprocessor-based OptiSpeed ® output regulation and optimisation OptiTip ® pitch regulation

31 31 V MW Nacelle construction Hub Blade bearing Blade Main bearing Hydraulic power unit Gearbox High speed shaft Yaw gear Generator Slip rings Anemometer Oil & water coolers Trafo

32 32 V MW Power curve

33 33 Choosing the right turbine …is the key to a feasible wind power project

34 34


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